地震地质 ›› 2002, Vol. 24 ›› Issue (4): 524-532.

• 地球物理 • 上一篇    下一篇

城市活断层探测的高分辨率浅层地震数据采集技术

刘保金1, 张先康1, 方盛明1, 赵成斌1, 段永红1, 朱金芳2, 黄昭2, 黄宗林2, 王善雄2, 郑德刚2   

  1. 1. 中国地震局地球物理勘探中心, 郑州, 450002;
    2. 福建省地震局, 福州, 350003
  • 收稿日期:2002-08-02 修回日期:2002-09-20 出版日期:2002-12-03 发布日期:2009-10-26
  • 作者简介:刘保金,男,1962年生,1986年毕业于中国科技大学地球物理专业,高级工程师,主要从事浅层地球物理探测方法的研究与应用,电话:0371-3856467,E-mail:LLBBJJ@sohu.net.
  • 基金资助:
    国家发展计划委员会高新技术项目(2001977)资助.

ACQUISITION TECHNIQUE OF HIGH-RESOLUTION SHALLOW SEISMIC DATA FOR SURVEYING OF URBAN ACTIVE FAULTS

LIU Bao-jin1, ZHANG Xian-kang1, FANG Sheng-ming1, ZHAO Cheng-bin1, DUAN Yong-hong1, ZHU Jin-fang2, HUANG Zhao2, HUANG Zong-lin2, WANG Shan-xiong2, ZHENG De-gang 2   

  1. 1. Research Center of Exploration Geophysics, China Seismological Bureau, Zhengzhou 450003, China;
    2. Seismological Bureau of Fujian Province, Fuzhou 350003, China
  • Received:2002-08-02 Revised:2002-09-20 Online:2002-12-03 Published:2009-10-26

摘要: 在简要介绍城市浅层地震勘探干扰波特点的基础上,结合福州市活断层探测的浅层地震试验探测资料,阐述了抗干扰高分辨率浅层地震勘探的技术装备、地震数据采集的技术方法以及在强干扰背景条件下围绕抗干扰和提高地震资料信噪比与分辨率而采取的技术措施.试验结果表明:采用可控震源和与其相匹配的地震仪器以及小道间距、小偏移距、多通道和高频检波器接收的工作方法,是实现抗干扰高分辨率浅层地震数据采集的有效途径.

关键词: 活断层, 浅层地震勘探, 干扰波, 信噪比, 分辨率

Abstract: In addition to a brief account of characteristics of disturbing waves in urban shallow seismic exploration, an exposition of technical facilities and seismic data acquisition techniques for anti-jamming and high-resolution shallow seismic exploration is given in this paper on the basis of shallow seismic experimental data of active fault surveying in Fuzhou City. The technical measures taken for anti-jamming, improving signal to noise ratio and resolution of seismic data are expounded as well. The experiment shows that the effective approach to accomplishing anti-jamming, high-resolution shallow seismic data acquisition is receiving with mini trace intervals, mini offsets, multi-channel and high-frequency Geophones by using mini-vibrator and the matched seismograph.

Key words: active fault, shallow seismic exploration, disturbing waves, signal to noise ratio, resolution

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